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Published on: August 31, 2014
Replication in the Mononuclear Phagocyte System (MPS) as a Determinant of Hantavirus Pathogenicity
Martin J Raftery1, Pritesh Lalwani1, Nina Lütteke1
1Institute of Virology, Charité-Universitätsmedizin Berlin, Freie Universität Berlin, Humboldt-Universität zu Berlin, Berlin Institute of Health, Berlin, Germany.
Abstract:
Members of different virus families including Hantaviridae cause viral hemorrhagic fevers (VHFs). The decisive determinants of hantavirus-associated pathogenicity are still enigmatic. Pathogenic hantavirus species, such as Puumala virus (PUUV), Hantaan virus (HTNV), Dobrava-Belgrade virus (DOBV), and Sin Nombre virus (SNV), are associated with significant case fatality rates. In contrast, Tula virus (TULV) only sporadically causes mild disease in immunocompetent humans and Prospect Hill virus (PHV) so far has not been associated with any symptoms. They are thus defined here as low pathogenic/apathogenic hantavirus species. We found that productive infection of cells of the mononuclear phagocyte system (MPS), such as monocytes and dendritic cells (DCs), correlated well with the pathogenicity of hantavirus species tested. HTNV (intermediate case fatality rates) replicated more efficiently than PUUV (low case fatality rates) in myeloid cells, whereas low pathogenic/apathogenic hantavirus species did not produce any detectable virus titers. Analysis of PHPUV, a reassortant hantavirus derived from a pathogenic (PUUV) and an apathogenic (PHV) hantavirus species, indicated that the viral glycoproteins are not decisive for replication in MPS cells. Moreover, blocking acidification of endosomes with chloroquine decreased the number of TULV genomes in myeloid cells suggesting a post-entry block for low pathogenic/apathogenic hantavirus species in myeloid cells. Intriguingly, pathogenic but not low pathogenic/apathogenic hantavirus species induced conversion of monocytes into inflammatory DCs. The proinflammatory programming of MPS cells by pathogenic hantavirus species required integrin signaling and viral replication. Our findings indicate that the capacity to replicate in MPS cells is a prominent feature of hantaviral pathogenicity.
Insights
Pathogenic hantaviruses efficiently infect mononuclear phagocyte system cells, unlike low-pathogenic strains. This replication in myeloid cells and induction of inflammatory dendritic cells are key to hantavirus pathogenicity.
Area of Science:
- Virology
- Immunology
- Pathogen Biology
Background:
- Hantaviridae viruses cause viral hemorrhagic fevers (VHFs), but determinants of pathogenicity remain unclear.
- Pathogenic hantaviruses (e.g., PUUV, HTNV) have high case fatality rates, while others (e.g., TULV, PHV) are low pathogenic/apathogenic.
Purpose of the Study:
- To investigate the role of mononuclear phagocyte system (MPS) cell infection in hantavirus pathogenicity.
- To identify viral factors and host cell interactions determining hantavirus virulence.
Main Methods:
- Infection of human monocytes and dendritic cells (DCs) with various hantavirus species.
- Analysis of viral replication, genome presence, and cell differentiation.
- Investigated the role of viral glycoproteins and endosomal acidification.
- Assessed the impact of integrin signaling and viral replication on MPS cell reprogramming.
Main Results:
- Productive infection of MPS cells correlated with hantavirus pathogenicity.
- Pathogenic HTNV replicated more efficiently in myeloid cells than PUUV.
- Low pathogenic/apathogenic hantaviruses showed post-entry blocks in myeloid cells.
- Pathogenic hantaviruses induced monocyte-to-inflammatory DC conversion, dependent on integrin signaling and replication.
Conclusions:
- The capacity of hantaviruses to replicate in MPS cells is a critical determinant of pathogenicity.
- Pathogenic hantaviruses reprogram MPS cells into inflammatory DCs, contributing to disease.
- Viral replication within MPS cells is essential for pathogenic reprogramming.

